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LancemoreJP
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Simulation of lateral sloshing behavior of a tank with roof and chamfer using ICFD coupled with DEM.
LS-DYNA Sample Models No.579 Simulation of lateral sloshing behavior of a tank with roof and chamfer using ICFD coupled with DEM.
ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision
LS-PrePost ver. 4.9
reference:
Takashi OKAMOTO, Mutsuto KAWAHARA, Two-dimensional sloshing analysis by the arbitrary lagrangian eulerian finite element method, JSCE, Jan. 1992. (Fig.4.1)
www.jstage.jst.go.jp/article/jscej1984/1992/441/1992_441_39/_pdf/-char/ja
LS-DYNA 解析事例集 No.579 DEMと連成したLS-DYNA ICFDソルバーによる屋根と面取りを有するタンク内の横方向スロッシング解析
www.lancemore.jp/ls-dyna/index_en.html
www.lancemore.jp/ls-dyna/index.html
#lsdyna, #cfd, #dem, #sloshing, #simulation, #スロッシング
ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision
LS-PrePost ver. 4.9
reference:
Takashi OKAMOTO, Mutsuto KAWAHARA, Two-dimensional sloshing analysis by the arbitrary lagrangian eulerian finite element method, JSCE, Jan. 1992. (Fig.4.1)
www.jstage.jst.go.jp/article/jscej1984/1992/441/1992_441_39/_pdf/-char/ja
LS-DYNA 解析事例集 No.579 DEMと連成したLS-DYNA ICFDソルバーによる屋根と面取りを有するタンク内の横方向スロッシング解析
www.lancemore.jp/ls-dyna/index_en.html
www.lancemore.jp/ls-dyna/index.html
#lsdyna, #cfd, #dem, #sloshing, #simulation, #スロッシング
Переглядів: 463
Відео
Sloshing behavior simulation with mult-axis control in a tank using ICFD solver coupled with DEM.
Переглядів 91Рік тому
LS-DYNA Sample Models No.578 Sloshing behavior simulation with biaxial translation and uniaxial rotation control in a tank with roof and chamfer using ICFD coupled with DEM. ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 reference: Takashi OKAMOTO, Mutsuto KAWAHARA, Two-dimensional sloshing analysis by the arbitrary lagrangian eulerian finite element method, JSCE, Jan. ...
Simulation of lateral sloshing behavior of a tank with roof and chamfer using ICFD coupled with DEM.
Переглядів 60Рік тому
LS-DYNA Sample Models No.577 Simulation of lateral sloshing behavior of a tank with roof and chamfer using ICFD coupled with DEM. ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 reference: Takashi OKAMOTO, Mutsuto KAWAHARA, Two-dimensional sloshing analysis by the arbitrary lagrangian eulerian finite element method, JSCE, Jan. 1992. www.jstage.jst.go.jp/article/jscej1984...
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ISPH solver (Fill depth 62%)
Переглядів 232Рік тому
LS-DYNA Sample Models No.574 Lateral Sloshing Analysis in a spherical tank using Incompressible SPH solver (Fill depth 62%) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.574 ISPH要素を使用したタンク内の液体の横方向スロッシング解析(充填高さ 62%) www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #sph, #isph, #sloshing
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ISPH solver (Fill depth 50%)
Переглядів 108Рік тому
LS-DYNA Sample Models No.573 Lateral Sloshing Analysis in a spherical tank using Incompressible SPH solver (Fill depth 50%) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.573 ISPH要素を使用したタンク内の液体の横方向スロッシング解析(充填高さ 50%) www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #sph, #isph, #sloshing
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ISPH solver (Fill depth 42%)
Переглядів 64Рік тому
LS-DYNA Sample Models No.572 Lateral Sloshing Analysis in a spherical tank using Incompressible SPH solver (Fill depth 42%) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.572 ISPH要素を使用したタンク内の液体の横方向スロッシング解析(充填高さ 42%) www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #sph, #isph, #sloshing
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ISPH solver (Fill depth 33%)
Переглядів 225Рік тому
LS-DYNA Sample Models No.571 Lateral Sloshing Analysis in a spherical tank using Incompressible SPH solver (Fill depth 33%) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.571 ISPH要素を使用したタンク内の液体の横方向スロッシング解析(充填高さ 33%) www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #sph, #isph, #sloshing
Lateral sloshing analysis in a tank using LS-DYNA ICFD solver coupled with DEM
Переглядів 1002 роки тому
LS-DYNA Sample Models No.570 Lateral sloshing analysis in a tank using LS-DYNA ICFD solver coupled with DEM ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.570 離散粒子法と連成したLS-DYNAの非圧縮流体解析ソルバーによるタンク内の液体の横方向スロッシング解析 www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #cfd, #dem, #sloshing, #coupling, #particles
Advanced simulation of liquid sloshing behavior in a spherical tank coupled with CFD and DEM (67%)
Переглядів 1042 роки тому
LS-DYNA Sample Models No.569 Coupled CFD and DEM simulation of sloshing in a spherical tank (Fill depth : 67%) Diameter of tank : D=1200 mm Fill depth of liquid : H = 0.67 x D (67%) mm Amplitude: A=40 mm Period : T=1.30 sec ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.569 LS-DYNA ICFD ソルバーとDEMを連成した球形タンク内の液体のスロッシング挙動のシミュレーション(充填高さ比67%) www.lancemore.jp...
Advanced simulation of liquid sloshing behavior in a spherical tank coupled with CFD and DEM (50%)
Переглядів 792 роки тому
LS-DYNA Sample Models No.568 Coupled CFD and DEM simulation of sloshing in a spherical tank (Fill depth : 50%) Diameter of tank : D=1200 mm Fill depth of liquid : H = 0.50 x D (50%) mm Amplitude: A=40 mm Period : T=1.30 sec ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.568 LS-DYNA ICFD ソルバーとDEMを連成した球形タンク内の液体のスロッシング挙動のシミュレーション (充填高さ比50%) www.lancemore.j...
Advanced simulation of liquid sloshing behavior in a spherical tank coupled with LSDYNA ICFD and DEM
Переглядів 792 роки тому
LS-DYNA Sample Models No.565 Advanced simulation of liquid sloshing behavior in a spherical tank coupled with CFD and DEM. ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.565 LS-DYNA ICFD ソルバーとDEMを連成した球形タンク内の液体のスロッシング挙動のシミュレーション www.lancemore.jp/ls-dyna/index_en.html www.lancemore.jp/ls-dyna/index.html #lsdyna, #cfd, #dem, #sloshing, #coupling, #particles
Lateral Sloshing Analysis in a regular dodecahedron tank using LS-DYNA ICFD solver(68% fill depth)
Переглядів 752 роки тому
LS-DYNA Sample Models No.567 Lateral Sloshing Analysis in a regular dodecahedron tank using LS-DYNA ICFD Solver(In case of 62% fill depth) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.566 LS-DYNA ICFD ソルバーを使用した横揺れ時における正十二面体タンク内の液体のスロッシング挙動の解析 (充填高さ比62%) www.lancemore.jp/ls-dyna/inde... www.lancemore.jp/ls-dyna/inde... #lsdyna, #icfd, #sloshing, #free,...
Lateral Sloshing Analysis in a regular dodecahedron tank using LS-DYNA ICFD solver(38%fill depth)
Переглядів 342 роки тому
LS-DYNA Sample Models No.566 Lateral Sloshing Analysis in a regular dodecahedron tank using LS-DYNA ICFD Solver(In case of 38% fill depth) ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.566 LS-DYNA ICFD ソルバーを使用した横揺れ時における正十二面体タンク内の液体のスロッシング挙動の解析 (充填高さ比38%) www.lancemore.jp/ls-dyna/inde... www.lancemore.jp/ls-dyna/inde... #lsdyna, #icfd, #sloshing, #free,...
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD solver(In case of 67% fill depth)
Переглядів 442 роки тому
LS-DYNA Sample Models No.564 Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD Solver(In case of 67% fill depth) Diameter of tank : D=1200 mm Fill depth of liquid : H = 0.67 x D (67%) mm Amplitude: A=40 mm Period : T=1.30 sec ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.564 LS-DYNA ICFD ソルバーを使用した横揺れ時における球形タンク内の液体のスロッシング挙動の解析 (充填高さ比67%) ...
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD solver(In case of 50% fill depth)
Переглядів 782 роки тому
LS-DYNA Sample Models No.563 Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD Solver(In case of 50% fill depth) Diameter of tank : D=1200 mm Fill depth of liquid : H = 0.50 x D (50%) mm Amplitude: A=40 mm Period : T=1.30 sec ANSYS LS-DYNA ver. R13.1.1 Win MPP double precision LS-PrePost ver. 4.9 LS-DYNA 解析事例集 No.563 LS-DYNA ICFD ソルバーを使用した横揺れ時における球形タンク内の液体のスロッシング挙動の解析 (充填高さ比50%) ...
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD solver(In case of 33% fill depth)
Переглядів 442 роки тому
Lateral Sloshing Analysis in a spherical tank using LS-DYNA ICFD solver(In case of 33% fill depth)
Simulation of deformation behavior of the floating structure due to close proximity UNDEX
Переглядів 2782 роки тому
Simulation of deformation behavior of the floating structure due to close proximity UNDEX
No.559 Whipping response of a surface ship subjected to close-in Underwater explosion with LS-DYNA
Переглядів 4452 роки тому
No.559 Whipping response of a surface ship subjected to close-in Underwater explosion with LS-DYNA
Pulsation and Surfacing behavior of a gas bubble generated by an underwater explosion with LS-DYNA
Переглядів 5502 роки тому
Pulsation and Surfacing behavior of a gas bubble generated by an underwater explosion with LS-DYNA
LS-DYNA Sample Model Part2 No.006 Balloon Trip / 熱気球の旅
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LS-DYNA Sample Model Part2 No.006 Balloon Trip / 熱気球の旅
No.318 2d axisymmetric analysis of shock diamonds using CESE solver in LS-DYNA
Переглядів 8323 роки тому
No.318 2d axisymmetric analysis of shock diamonds using CESE solver in LS-DYNA
Finite Element Analysis of Underwater Acoustic Wave Propagation with LS-DYNA
Переглядів 1,6 тис.3 роки тому
Finite Element Analysis of Underwater Acoustic Wave Propagation with LS-DYNA
No.067 Acoustic Wave Propagation after contact between ball and thin plate using LS-DYNA
Переглядів 5953 роки тому
No.067 Acoustic Wave Propagation after contact between ball and thin plate using LS-DYNA
No.510 Large deformation of honeycomb core in each loading direction with LS-DYNA
Переглядів 6573 роки тому
No.510 Large deformation of honeycomb core in each loading direction with LS-DYNA
No.509 Advanced Non Linear Static Implicit Finite Element Analysis /LS-DYNAの静的陰解法による非線形有限要素解析
Переглядів 7093 роки тому
No.509 Advanced Non Linear Static Implicit Finite Element Analysis /LS-DYNAの静的陰解法による非線形有限要素解析
No.508 Impact Analysis of Sabo Dam against Large Scale Debris Flow 2/ 土石流による砂防ダムへの巨礫の衝撃解析 (2)
Переглядів 2833 роки тому
No.508 Impact Analysis of Sabo Dam against Large Scale Debris Flow 2/ 土石流による砂防ダムへの巨礫の衝撃解析 (2)
No.507 Impact Analysis of Sabo Dam against Large Scale Debris Flow / 土石流による砂防ダムへの巨礫の衝撃解析
Переглядів 3073 роки тому
No.507 Impact Analysis of Sabo Dam against Large Scale Debris Flow / 土石流による砂防ダムへの巨礫の衝撃解析
No.179 Simulation of Underwater Explosion near the floating structure / 浮体鋼製構造物の近接水中爆発バブル挙動シミュレーション
Переглядів 7233 роки тому
No.179 Simulation of Underwater Explosion near the floating structure / 浮体鋼製構造物の近接水中爆発バブル挙動シミュレーション
No.506 Simulation of Head-to-Windshield Impact using Free Motion Headform model /自動車のフロントガラスへの頭部衝突解析
Переглядів 5773 роки тому
No.506 Simulation of Head-to-Windshield Impact using Free Motion Headform model /自動車のフロントガラスへの頭部衝突解析
No.198 Sloshing simulation of spent fuel pool by sine wave excitation / 正弦波加振による使用済み核燃料プールのスロッシング解析
Переглядів 2913 роки тому
No.198 Sloshing simulation of spent fuel pool by sine wave excitation / 正弦波加振による使用済み核燃料プールのスロッシング解析
good one
where can i get the full video of modeling?
Can we do it in ANSYS Fluent also plz share the process if possible
Its not heat but sheer pressure unbelivable focus explosion in a jet explains everything
Fluid dynamics areo dynamics venturi effect any comments ?
Did the penetrating gas travel a 50k /ft / sec ??
The resemblance to the Russian Coat of Arms is impressive..
На сколько красиво нам даёт понять и увидеть многие эффекты, точное математическое моделирование.
Сделайте симуляцию, так что бы две струи били друг напротив друга одновременно.
Thank you for the wonderful video. It's particularly interesting to study the pressure distribution in front of the cumulative jet at the 38th second. Could you please make a video where the armor is thinner, and the cumulative jet penetrates it? It's crucial to consider that the density of copper (8.9) exceeds the density of armor (7.0). I think the area of increased pressure in front of the cumulative jet would look different. It seems to me that iron, not copper, is the first to enter the armored space. The exact amount, however, is unclear.
Would also be interesting to see an animation of how metal behaves within armor before a tungsten sub-caliber projectile (density!) hits
Интерференция волн, красиво!
Кольца маха в реактивной струе?
Это поведение жидкости в моём бензобаке?
Несовсем понятно.
Привет от getAClass
абалдеть там конечно расценки 100 000 йен чтобы курс купить.. а есть наши подобные программы?
Ты о чем? Ls prepost можно бесплатно скачать
а вы могли бы расчитать электромагнитные силы?
Hi, the model looks very physical, thanks ! many waves: dilational, surface..
Hello, may I have your contact information? Or email address. I have some questions I'd like to ask you.
Yes 🖐️🖐️🖐️🖐️ flat sp6 start to engine 🚒🚒🚒 brother
im glad that aluminum honey comb is structurally sound and my 3 million dollar hypercar will crunch like a tin can.
Hello looks good but , why the pressure reflect from boundary.
Вау, за 10 лет ни одного комментария
Nice graphics, but had to turn the sound off. Thanks 🙂😎👍
Sir how did you add that circle grid on meshi proper work.
Couldn't have done this without the most annoying repetitive, alarm clock-esque background music blaring now could we. Or were the royaltys only free for the first ten seconds ?
It's Amazing that a Weapon from World War 2 cannot be defeated in 2020?
the shaped charge weapons from WW2 can easily be defeated by modern armor, it is just that shaped charges have changed significantly since then which is what allows them to defeat modern armor.
Wow. This is the best . Great Leszek.
I am impresed.
I am impresded.
Is that fluent? Whats this program
coooool
Just how did I get here?
Enjoy! (shaped charge at 5 million fps) ua-cam.com/video/uRHjd8GZc78/v-deo.html
great case
Hello, is it possible to get the .k file please ? Thanks in advance.
Munroe effect
i signed in on a college computer to subscribe like and comment g- thanks
What was the final stats? Depth, type of armour, size of warhead, etc?
Thanks
does a k file is available ?
The pressure waves look like fractals. Is that a thing, or did I do too much acid in the 90s? Both are likely.🤔
Nice...
How to extract internal force result of bond of dem in Lsprepost?
Which parameter is used in the fringe plot of your video?
What’s the grey tube…is that air? Or what? The orange stuff is the copper lining I’m guessing which punches though but I can’t tell what the grey is…
my best is on RHA, rolled homogeneous armor, typically made from steel.
Hi! Did you use only eulerian ale approach? Or there was maybe applied eulerian ale - lagrangian coupling? Best regards!
hello, can you tell me how to make the sediment by SPH? Thank you
Thank you for the good video. Can I get the K file?
I have ques. I already make one model using sma wire but with just a straight line to represent the wire. I meshed it as beam but it behave like rod. I want it to contract and expand how??